Ku, M.-H.; Chen, S.-W.; Wu, C.-D.; Liu, Y.-T.; Lin, Q.-E.; Li, C.-L.; Wu, M.-W.
The Effects of Unit Cell Arrangement and Hybrid Design on the Compressive Performances of Additive Manufactured Corrax Maraging Stainless Steel Lattices. Materials 2025, 18, 4443.
https://doi.org/10.3390/ma18194443
AMA Style
Ku M-H, Chen S-W, Wu C-D, Liu Y-T, Lin Q-E, Li C-L, Wu M-W.
The Effects of Unit Cell Arrangement and Hybrid Design on the Compressive Performances of Additive Manufactured Corrax Maraging Stainless Steel Lattices. Materials. 2025; 18(19):4443.
https://doi.org/10.3390/ma18194443
Chicago/Turabian Style
Ku, Ming-Hsiang, Shou-Wun Chen, Cheng-Da Wu, Yan-Ting Liu, Quiao-En Lin, Chien-Lun Li, and Ming-Wei Wu.
2025. "The Effects of Unit Cell Arrangement and Hybrid Design on the Compressive Performances of Additive Manufactured Corrax Maraging Stainless Steel Lattices" Materials 18, no. 19: 4443.
https://doi.org/10.3390/ma18194443
APA Style
Ku, M.-H., Chen, S.-W., Wu, C.-D., Liu, Y.-T., Lin, Q.-E., Li, C.-L., & Wu, M.-W.
(2025). The Effects of Unit Cell Arrangement and Hybrid Design on the Compressive Performances of Additive Manufactured Corrax Maraging Stainless Steel Lattices. Materials, 18(19), 4443.
https://doi.org/10.3390/ma18194443